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Synthesis and properties of water‐dispersible polyurethanes based on various diisocyanates and PEG as the hard segment

机译:以各种二异氰酸酯和PEG为硬段的水分散聚氨酯的合成及性能

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摘要

Abstract Water‐dispersible polyurethanes are a greener alternative to polyurethane solutions in organic solvents. Various polyurethane materials were prepared by a two‐step polymerization procedure of polypropylene glycol with Mn of 2000, polyethylene glycol with Mn of 1500, and diisocyanates with different chemical structures, aliphatic, cycloaliphatic and aromatic. It was investigated how the diisocyanate structure affected the molecular morphology, contact angle measurements, and physical characteristics of water‐dispersible polyurethanes. FTIR and NMR measurements showed a close relationship between the intermolecular connections and the hard segment structure, mainly of the diisocyanate used. Also, the polarized light method showed that the presence of the PEG in the hard domain improved aggregation through physical interactions due to its structural flexibility and mobility. These water‐dispersible polyurethanes can assure the use of these polyurethane materials in a broad range of applications with increased environmental protection.
机译:摘要 水分散性聚氨酯是有机溶剂中聚氨酯溶液的绿色替代品。采用Mn为2000的聚丙二醇、Mn为1500的聚乙二醇和不同化学结构的脂肪族、脂环族和芳香族二异氰酸酯两步聚合法制备了各种聚氨酯材料。研究了二异氰酸酯结构如何影响水分散聚氨酯的分子形貌、接触角测量和物理特性。傅里叶变换红外光谱(FTIR)和核磁共振(NMR)测量显示,分子间连接与硬链段结构(主要是所用的二异氰酸酯)之间存在密切关系。此外,偏振光方法表明,由于其结构的柔韧性和迁移率,PEG在硬域中的存在通过物理相互作用改善了聚集。这些水分散性聚氨酯可以确保这些聚氨酯材料在广泛的应用中使用,同时提高环境保护性。

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